-
公开(公告)号:KR1020130101826A
公开(公告)日:2013-09-16
申请号:KR1020120022872
申请日:2012-03-06
Applicant: 가톨릭관동대학교산학협력단
CPC classification number: B01J20/3071 , B01J20/10 , B01J20/22 , B01J20/305 , C02F1/288
Abstract: PURPOSE: A manufacturing method of organic-sericite is provided to be able to manufacture organic-sericite having a good copper ion adsorption effect in a shortened period, and to prepare a ground that the organic-sericite product is able to be industrially produced and utilized through an improved manufacturing method. CONSTITUTION: Organic-sericite for adsorbing and removing the copper element in wastewater is manufactured by processing the surface of sericite and forming a micro void between layers by using a mercapto silane compound, separating and drying to obtain organic-sericite particles. The mercapto silane compound is 3-mercaptopropyltrimethoxysilane. A manufacturing method of organic-sericite comprises a process of manufacturing a sericite solution by putting 10 g of sericite and 200-300 ml of toluene as a reaction co-solvent within a sealed container, forming a firstly homogeneous solution state with stirring, adding 15-25 ml of 3-mercaptopropyltrimethoxylsilane to the solution, ion-exchanging by stirring at a high temperature of 60-70deg.C for 10-14 hours and cooling to a room temperature; a process of separating pure organic-sericite by pouring the ion-exchanged sericite solution on a filter medium and repeatedly pouring toluene as a washing agent to wash; and a process of obtaining organic-sericite particles by removing residual toluene in an oven of 100-110deg.C for 2-4 hours.
Abstract translation: 目的:提供有机绢云母的制造方法,以能够在缩短的时间内制造具有良好的铜离子吸附效果的有机绢云母,并且制备有机绢云母产品能够在工业上生产和利用的研磨 通过改进的制造方法。 构成:用于吸附和去除废水中的铜元素的有机绢云母是通过加工绢云母的表面并通过使用巯基硅烷化合物在层之间形成微空隙来制造的,分离和干燥以获得有机 - 绢云母颗粒。 巯基硅烷化合物是3-巯基丙基三甲氧基硅烷。 有机绢云母的制造方法包括通过在密封容器内放入10g绢云母和200-300ml作为反应助溶剂的甲苯来制造绢云母溶液的方法,在搅拌下形成第一均匀溶液状态,加入15 -25毫升3-巯基丙基三甲氧基硅烷溶液中,在60-70度的高温下搅拌进行10-14小时的离子交换并冷却至室温; 通过将离子交换的绢云母溶液倒入过滤介质上并反复倾倒甲苯作为洗涤剂洗涤来分离纯有机 - 绢云母的方法; 以及通过在100-110℃的烘箱中除去残留甲苯2-4小时获得有机绢云母颗粒的方法。
-
公开(公告)号:KR3006570100002S
公开(公告)日:2013-07-10
申请号:KR3020120004454
申请日:2012-01-31
Applicant: 가톨릭관동대학교산학협력단
Designer: 정재국
-
公开(公告)号:KR3006994420000S
公开(公告)日:2013-07-09
申请号:KR3020120012361
申请日:2012-03-15
Applicant: 가톨릭관동대학교산학협력단
Designer: 제갈재호
-
公开(公告)号:KR3006982980000S
公开(公告)日:2013-06-24
申请号:KR3020120014533
申请日:2012-03-28
Applicant: 가톨릭관동대학교산학협력단
Designer: 제갈재호
-
公开(公告)号:KR3006915920000S
公开(公告)日:2013-05-06
申请号:KR3020120012362
申请日:2012-03-15
Applicant: 가톨릭관동대학교산학협력단
Designer: 제갈재호
-
公开(公告)号:KR3006915860000S
公开(公告)日:2013-05-03
申请号:KR3020120004658
申请日:2012-02-01
Applicant: 가톨릭관동대학교산학협력단
Designer: 송윤섭
-
公开(公告)号:KR3006817670000S
公开(公告)日:2013-02-22
申请号:KR3020120012354
申请日:2012-03-15
Applicant: 가톨릭관동대학교산학협력단
Designer: 류수현
-
公开(公告)号:KR1020120136108A
公开(公告)日:2012-12-18
申请号:KR1020110055124
申请日:2011-06-08
Applicant: 가톨릭관동대학교산학협력단 , 극동산업개발(주)
CPC classification number: G08G1/0175 , G06K2209/15 , G08G1/07
Abstract: PURPOSE: An intersection signal violation enforcement system and method are provided to effectively control an intersection signal violation vehicle by determining the signal violation of the vehicle based on a traffic signal and a sensing signal of a sensor. CONSTITUTION: A traffic light controller(110) controls the operation of each traffic light by applying a traffic signal to each intersection traffic light. A sensor(120) is installed on an intersection vehicle detecting area. The sensor detects a vehicle passing through the vehicle detecting area. A signal violation determination unit determines the signal violation of the vehicle. [Reference numerals] (110) Traffic light controller; (120) Sensor; (130) Signal violation determination unit; (140) Vehicle recognition unit; (150) Video record unit; (160) System controller
Abstract translation: 目的:提供一种交叉路口信号违规执行系统和方法,通过基于交通信号和传感器的感测信号确定车辆的信号违规,有效地控制交叉路口违规车辆。 构成:交通信号灯控制器(110)通过对每个交叉口交通信号灯施加交通信号来控制每个交通信号灯的运行。 传感器(120)安装在十字路口车辆检测区域上。 传感器检测通过车辆检测区域的车辆。 信号违规确定单元确定车辆的信号违规。 (附图标记)(110)交通灯控制器; (120)传感器; (130)信号违规判定单元; (140)车辆识别单元; (150)录像机; (160)系统控制器
-
公开(公告)号:KR101212733B1
公开(公告)日:2012-12-14
申请号:KR1020110033822
申请日:2011-04-12
Applicant: 가톨릭관동대학교산학협력단
Inventor: 이재민
Abstract: 본발명은태양광복합추적식발전장치와그를포함하는감성형가로등조명시스템에관한것으로, 태양이동에관한천문학적좌표(태양의고도와방위각)를이용하여태양을 1차추적하면서광량에따라태양광원의위치를 2차정밀추적할수 있기때문에, 일반단일추적방식의태양광발전시스템에비해발전효율을극대화할수 있는발명이며, 감성형 LED 가로등조명이설치되는장소의온도와습도에따라 LED 램프의조명색상을가변시켜줄 수있기때문에, 환경친화적이면서도보는이의감성을순화시켜줄 수있는유용한발명이다.
Abstract translation: 目的:提供一种复杂跟踪风格的太阳能发电系统和使用该太阳能发电系统的敏感型路灯照明系统,以通过根据阳光的量跟踪阳光的位置来最大化发电效率。 构成:光学传感器模块(110)包括在模块倾斜表面上的光学传感器并且测量具有200度以上广角的光量。 GPS接收机(140)获取GPS信息。 太阳能模块驱动部(120)使太阳能模块旋转。 编码器感测太阳能模块的旋转位置。 系统控制器(200)根据光量控制太阳能模块驱动部件,以使用相对于太阳运动和太阳光的位置的天文坐标精确地跟踪太阳。 (附图标记)(110)光传感器模块; (120)太阳能模块驱动部件; (130)编码器; (140)GPS接收机; (200)系统控制器; (300)太阳能组件
-
公开(公告)号:KR1020120133002A
公开(公告)日:2012-12-10
申请号:KR1020110051448
申请日:2011-05-30
Applicant: 가톨릭관동대학교산학협력단 , (주)신우이엔지
CPC classification number: B29C59/02 , B29C59/002 , B29K2633/12 , B29K2995/003 , B29L2011/0075
Abstract: PURPOSE: A pattern forming apparatus of a light guide plate which is suitable for the same is provided to improve the reflection efficiency of the light guide plate as a V-groove in the light guide groove is deeply dented and the angle of a pattern forming tip is adjusted. CONSTITUTION: A pattern forming apparatus of a light guide plate which is suitable for the same comprises a preheating unit(104), a tip pressure regulating unit(108), a driving unit(110), and a microprocessor unit(112). The preheating unit pre-heats a pattern forming tip(102). The tip pressure regulating unit controls the pressure of the pattern forming tip. The driving unit moves the pattern forming tip to X and Y axes. A micro control unit controls the driving unit, tip pressure regulating unit, and the preheating unit. [Reference numerals] (102) Pattern forming tip; (104) Preheating unit; (106) Temperature controller; (108) Tip pressure regulating unit; (110) Driving unit for X-Y movement; (112) Microprocessor unit; (120) Light guide plate
Abstract translation: 目的:提供适合于其的导光板的图形形成装置,以提高导光板中的V形槽的导光板的反射效率,并且形成图案的尖端 被调整。 构成:适用于导光板的图案形成装置包括预热单元(104),尖端压力调节单元(108),驱动单元(110)和微处理器单元(112)。 预热单元预热图案形成尖端(102)。 尖端压力调节单元控制图案形成尖端的压力。 驱动单元将图案形成尖端移动到X轴和Y轴。 微控制单元控制驱动单元,尖端压力调节单元和预热单元。 (附图标记)(102)图案形成尖端; (104)预热单元; (106)温度控制器; (108)端头压力调节单元; (110)X-Y运动用驱动单元 (112)微处理器单元; (120)导光板
-
-
-
-
-
-
-
-
-